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Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage

[Image: see text] Polymer-based nanocomposites containing inorganic ferroelectric inclusions, typically ABO(3) perovskites, have emerged as innovative dielectric materials for energy storage and electric insulation, potentially coupling the high breakdown strength (BDS) and easy processing of polyme...

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Autores principales: Padurariu, Leontin, Brunengo, Elisabetta, Canu, Giovanna, Curecheriu, Lavinia Petronela, Conzatti, Lucia, Buscaglia, Maria Teresa, Stagnaro, Paola, Mitoseriu, Liliana, Buscaglia, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10020966/
https://www.ncbi.nlm.nih.gov/pubmed/36861349
http://dx.doi.org/10.1021/acsami.2c23013
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author Padurariu, Leontin
Brunengo, Elisabetta
Canu, Giovanna
Curecheriu, Lavinia Petronela
Conzatti, Lucia
Buscaglia, Maria Teresa
Stagnaro, Paola
Mitoseriu, Liliana
Buscaglia, Vincenzo
author_facet Padurariu, Leontin
Brunengo, Elisabetta
Canu, Giovanna
Curecheriu, Lavinia Petronela
Conzatti, Lucia
Buscaglia, Maria Teresa
Stagnaro, Paola
Mitoseriu, Liliana
Buscaglia, Vincenzo
author_sort Padurariu, Leontin
collection PubMed
description [Image: see text] Polymer-based nanocomposites containing inorganic ferroelectric inclusions, typically ABO(3) perovskites, have emerged as innovative dielectric materials for energy storage and electric insulation, potentially coupling the high breakdown strength (BDS) and easy processing of polymers with the enhancement of dielectric constant provided by the ferroelectric phase. In this paper, experimental data and three-dimensional finite element method (3D FEM) simulations were combined to shed some light on the effect of microstructures on the dielectric properties of poly(vinylidene fluoride) (PVDF)-BaTiO(3) composites. The existence of particle aggregates or touching particles has a strong effect on the effective dielectric constant and determines an increase of the local field in the neck region of the ferroelectric phase with a detrimental effect on the BDS. The distribution of the field and the effective permittivity are very sensitive to the specific microstructure considered. The degradation of the BDS can be overcome by coating the ferroelectric particles with a thin shell of an insulating oxide with a low dielectric constant, such as SiO(2) (ε(r) = 4). The local field is highly concentrated on the shell, while the field in the ferroelectric phase is reduced almost to zero and that on the matrix is close to the applied one. The electric field in the matrix becomes less homogeneous with increasing the dielectric constant of the shell material, as happens with TiO(2) (ε(r) = 30). These results provide a solid background to explain the enhanced dielectric properties and the superior BDS of composites containing core–shell inclusions.
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spelling pubmed-100209662023-03-18 Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage Padurariu, Leontin Brunengo, Elisabetta Canu, Giovanna Curecheriu, Lavinia Petronela Conzatti, Lucia Buscaglia, Maria Teresa Stagnaro, Paola Mitoseriu, Liliana Buscaglia, Vincenzo ACS Appl Mater Interfaces [Image: see text] Polymer-based nanocomposites containing inorganic ferroelectric inclusions, typically ABO(3) perovskites, have emerged as innovative dielectric materials for energy storage and electric insulation, potentially coupling the high breakdown strength (BDS) and easy processing of polymers with the enhancement of dielectric constant provided by the ferroelectric phase. In this paper, experimental data and three-dimensional finite element method (3D FEM) simulations were combined to shed some light on the effect of microstructures on the dielectric properties of poly(vinylidene fluoride) (PVDF)-BaTiO(3) composites. The existence of particle aggregates or touching particles has a strong effect on the effective dielectric constant and determines an increase of the local field in the neck region of the ferroelectric phase with a detrimental effect on the BDS. The distribution of the field and the effective permittivity are very sensitive to the specific microstructure considered. The degradation of the BDS can be overcome by coating the ferroelectric particles with a thin shell of an insulating oxide with a low dielectric constant, such as SiO(2) (ε(r) = 4). The local field is highly concentrated on the shell, while the field in the ferroelectric phase is reduced almost to zero and that on the matrix is close to the applied one. The electric field in the matrix becomes less homogeneous with increasing the dielectric constant of the shell material, as happens with TiO(2) (ε(r) = 30). These results provide a solid background to explain the enhanced dielectric properties and the superior BDS of composites containing core–shell inclusions. American Chemical Society 2023-03-02 /pmc/articles/PMC10020966/ /pubmed/36861349 http://dx.doi.org/10.1021/acsami.2c23013 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Padurariu, Leontin
Brunengo, Elisabetta
Canu, Giovanna
Curecheriu, Lavinia Petronela
Conzatti, Lucia
Buscaglia, Maria Teresa
Stagnaro, Paola
Mitoseriu, Liliana
Buscaglia, Vincenzo
Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title_full Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title_fullStr Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title_full_unstemmed Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title_short Role of Microstructures in the Dielectric Properties of PVDF-Based Nanocomposites Containing High-Permittivity Fillers for Energy Storage
title_sort role of microstructures in the dielectric properties of pvdf-based nanocomposites containing high-permittivity fillers for energy storage
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10020966/
https://www.ncbi.nlm.nih.gov/pubmed/36861349
http://dx.doi.org/10.1021/acsami.2c23013
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